Kazan Institute of Biochemistry and Biophysics, Federal Research Center "Kazan Scientific Center of the Russian Academy of Sciences", 420111 Kazan, Russia.
Institute of Fundamental Medicine and Biology, Kazan Federal University, 420008 Kazan, Russia.
Int J Mol Sci. 2023 Dec 11;24(24):17348. doi: 10.3390/ijms242417348.
The alternative sigma factor RpoS is considered to be one of the major regulators providing stress resistance and cross-protection in bacteria. In phytopathogenic bacteria, the effects of RpoS have not been analyzed with regard to cross-protection, and genes whose expression is directly or indirectly controlled by RpoS have not been determined at the whole-transcriptome level. Our study aimed to determine RpoS-regulated genes and phenotypes in the phytopathogenic bacterium . Knockout of the gene in affected the long-term starvation response, cross-protection, and virulence toward plants with enhanced immune status. The whole-transcriptome profiles of the wild-type strain and its Δ mutant were compared under different experimental conditions, and functional gene groups whose expression was affected by RpoS were determined. The RpoS promoter motif was inferred within the promoter regions of the genes affected by deletion, and the RpoS regulon was predicted. Based on RpoS-controlled phenotypes, transcriptome profiles, and RpoS regulon composition, the regulatory role of RpoS in is discussed.
副σ因子 RpoS 被认为是提供细菌应激抗性和交叉保护的主要调节剂之一。在植物病原细菌中,尚未针对交叉保护分析 RpoS 的作用,并且尚未在全转录组水平上确定其表达受 RpoS 直接或间接控制的基因。我们的研究旨在确定植物病原细菌中 RpoS 调节的基因和表型。在 中敲除 基因会影响长期饥饿反应、交叉保护以及对具有增强免疫状态的植物的毒力。在不同实验条件下比较了野生型 菌株及其 Δ 突变体的全转录组谱,并确定了受 RpoS 影响的功能基因群。推断了受 缺失影响的基因的 RpoS 启动子模体,并预测了 RpoS 调控子。基于 RpoS 控制的表型、转录组谱和 RpoS 调控子组成,讨论了 RpoS 在 中的调控作用。